Early-career researchers are a vital driving force behind the advancement of mechanical engineering and aerospace engineering. They continue to achieve new breakthroughs in fundamental theoretical research, key technological innovations, and engineering applications. With the rapid development of artificial intelligence, intelligent sensing, digital twins, and high-performance computing, research areas such as mechanical vibration, noise control, aeroacoustics, structural dynamics, flow-induced vibration, and multiphysics coupling are increasingly integrating intelligent methods. These advances provide new approaches to condition sensing, performance prediction, fault diagnosis, and active control for complex engineering systems.
Driven by the growing demands of advanced mechanical equipment and aerospace vehicles, early-career researchers have demonstrated strong innovative capabilities and considerable academic potential in areas including intelligent acoustics, integrated vibro-acoustic control, advanced structural design, intelligent manufacturing, vehicle dynamics, aerodynamic noise, and vibration and noise in propulsion systems. Early-career researchers are expected to play an increasingly important role in interdisciplinary collaboration, technological breakthroughs, and industrial applications across mechanical engineering and aerospace engineering.
This special forum aims to provide doctoral students, postdoctoral researchers, and other early-career researchers with a platform to present their latest findings and exchange ideas. Participants are encouraged to share new concepts, methods, and achievements in theoretical research, engineering practice, and interdisciplinary innovation, thereby promoting academic interaction, collaboration, and professional development among early-career researchers.
青年学者是推动机械工程与航空航天领域发展的重要力量,他们在基础理论探索、关键技术创新与工程应用实践中不断取得新的突破。随着人工智能、智能感知、数字孪生、高性能计算等技术的快速发展,机械振动、噪声控制、航空声学、结构动力学、流致振动及多物理场耦合等研究方向正加速与智能方法融合,为复杂装备的状态感知、性能预测、故障诊断与主动控制提供了新的思路。
面向高端机械装备与航空航天飞行器的发展需求,青年学者在智能声学、声振协同调控、先进结构设计、智能制造、飞行器动力学、气动噪声、推进系统振动与噪声等方向展现出活跃的创新能力与广阔的学术潜力。可以预见,青年学者将在机械工程与航空航天领域的交叉融合、技术突破与产业应用中发挥更加关键的作用。
本专题论坛旨在为博士研究生、博士后及青年科研人员搭建展示最新成果与交流思想的平台,鼓励分享在理论研究、工程实践及跨学科创新中的新思路、新方法和新成果,促进青年学者之间的学术互动与合作成长。
The topics of this special forum include, but are not limited to:
**Mechanical Engineering**
(1) Dynamics of mechanical systems, vibration mechanisms, and nonlinear responses
(2) Vibration control, noise reduction, and integrated vibro-acoustic control
(3) Intelligent acoustics, acoustic signal processing, and intelligent sensing
(4) Fault diagnosis and health monitoring through data-driven and physics-informed approaches
(5) Dynamic modeling, digital twins, and performance prediction for complex equipment
(6) Smart materials, acoustic metamaterials, and advanced structural design
(7) Robotics, automation systems, and intelligent manufacturing
**Aerospace Engineering**
(1) Aeroacoustics, aerodynamic noise, and flow-induced vibration
(2) Mechanisms and analytical methods for fluid–acoustic–structure multiphysics coupling
(3) Structural dynamics, vibration control, and acoustic-environment prediction for aerospace vehicles
(4) Intelligent aerodynamic design, aeroelasticity, and multidisciplinary optimization
(5) Vibration, noise, and combustion instability in aero-engines and propulsion systems
(6) Spacecraft dynamics, intelligent control, and in-orbit condition sensing
(7) Space robotics, on-orbit servicing, and intelligent operation and maintenance
(8) Intelligent processing and analysis of aerospace remote-sensing data
本专题论坛的主题包括但不限于:
机械工程领域
(1)机械系统动力学、振动机理与非线性响应
(2)振动控制、噪声抑制与声振协同调控
(3)智能声学、声学信号处理与智能感知
(4)数据驱动与机理融合的故障诊断和健康监测
(5)复杂装备动力学建模、数字孪生与性能预测
(6)智能材料、声学超材料与先进结构设计
(7)机器人、自动化系统与智能制造
航空航天领域
(1)航空声学、气动噪声与流致振动
(2)流—声—固多物理场耦合机理与分析方法
(3)飞行器结构动力学、振动控制与声学环境预测
(4)智能气动设计、气动弹性与多学科优化
(5)航空发动机与推进系统的振动、噪声及燃烧不稳定性
(6)航天器动力学、智能控制与在轨状态感知
(7)空间机器人、在轨服务与智能运维
(8)航空航天遥感数据的智能处理与分析
By promoting in-depth interdisciplinary collaboration across artificial intelligence, acoustics, vibration, dynamics, and aerospace engineering, this forum will provide a platform for early-career researchers to showcase their achievements, exchange ideas, and inspire innovation. It aims to support their development into future academic leaders and pioneers of technological innovation while jointly advancing mechanical engineering and aerospace engineering.
通过促进人工智能、声学、振动、动力学及航空航天工程等方向的深度交叉,本论坛将搭建青年学者展示成果、交流思想与激发创新的平台,助力青年科研人员成长为未来的学术带头人与科技创新先锋,共同推动机械工程与航空航天领域的持续发展与突破。
Please submit your manuscript via Online Submission System: https://easychair.org/conferences/?conf=meae2026
Please choose "Young Scholars Forum"
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Lingfeng Chen, Civil Aviation University of China, China 陈凌峰, 博士,中国民航大学安全学院副教授。关注航空发动机声学材料特性测量方法及管道声学快速计算方法研究,主持国家自然科学基金青年基金项目,以第一作者在JASA、JSV、CJA等期刊上发表论文6篇。
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Xian Wu, Camille Intelligent Technology (Shanghai) Co., Ltd., China 吴限博士,卡米乐智能科技(上海)有限公司创始人兼CEO,欧盟玛丽·居里学者。毕业于比利时鲁汶大学机械工程专业,获博士学位,曾在德国亚琛工业大学、海德声科、博世、比利时Flanders Make及法国MicrodB等高校和企业从事科研与工程研发工作。长期从事阵列声学、声学成像、智能感知、机器学习及工业人工智能研究,致力于推动人工智能与先进制造深度融合。现创办卡米乐智能科技,聚焦工业AI声学感知技术研发,面向新能源汽车、高端装备等领域开展智能质量检测与状态监测应用。曾获教育部留学服务中心”春晖杯”中国留学人员创新创业大赛优秀成果奖、海交会海外人才创业邀请赛精选项目第一名等。
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